Answer:
Part a)
[tex]d = 25 km[/tex]
Part b)
[tex]v_{avg} = 10.42 km/h[/tex]
Part c)
[tex]v_{avg} = 17.86 km/h[/tex]
Part d)
Displacement for entire trip = 0
Part e)
Average velocity for entire trip will be zero
Explanation:
Part a)
Displacement after t = 2.4 hours is the straight line distance between initial and final positions
so we have
[tex]d = 25 km[/tex]
Part b)
Average velocity is defined as
[tex]v_{avg} = \frac{displacement}{time}[/tex]
[tex]v_{avg} = \frac{25 km}{2.4 h}[/tex]
[tex]v_{avg} = 10.42 km/h[/tex]
Part c)
During his return journey the displacement will be same
[tex]displacement = 25 km[/tex]
[tex]time = 1.4 h[/tex]
so average velocity is defined as
[tex]v_{avg} = \frac{25 km}{1.4 h}[/tex]
[tex]v_{avg} = 17.86 km/h[/tex]
Part d)
Displacement for entire trip = 0
as initial and final position will be same
Part e)
Average velocity for entire trip will be zero